Leonard M W, Lim K C, Engel J D
Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, IL 60208-3500.
Development. 1993 Oct;119(2):519-31. doi: 10.1242/dev.119.2.519.
The DNA motif WGATAR has been identified within transcriptional regulatory domains of globin and other erythroid-specific genes and the activator proteins that bind to this regulatory element, the GATA factors, belong to a multi-gene family that is expressed in chicken erythroid cells. Here we show that, as in chickens, multiple members of the GATA factor family are expressed in human and murine erythroid cells. During the early stages of chicken embryogenesis (well before blood island formation), each of the GATA family members is transcribed with a unique temporal and spatial pattern. In the primitive erythroid lineage, transcription of the embryonic epsilon-globin gene parallels GATA-1 expression while the switch to beta-globin transcription in definitive erythroid cells is directly preceded by a pronounced increase in GATA-3 accumulation. The timing and pattern of expression of these different mRNAs during avian erythroid development and differentiation suggests that temporally regulated changes in GATA factor expression are required for vertebrate hematopoiesis.
DNA基序WGATAR已在珠蛋白及其他红系特异性基因的转录调控区域中被鉴定出来,而与该调控元件结合的激活蛋白——GATA因子,属于一个在鸡红系细胞中表达的多基因家族。在此我们表明,与鸡的情况一样,GATA因子家族的多个成员在人和鼠的红系细胞中也有表达。在鸡胚胎发育的早期阶段(远在血岛形成之前),GATA家族的每个成员都以独特的时间和空间模式进行转录。在原始红系谱系中,胚胎ε-珠蛋白基因的转录与GATA-1的表达平行,而在定型红系细胞中向β-珠蛋白转录的转换之前,GATA-3的积累会显著增加。这些不同mRNA在禽类红系发育和分化过程中的表达时间和模式表明,GATA因子表达的时间调控变化是脊椎动物造血所必需的。